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Effects of waste glass on alkali-activated tungsten mining waste: composition and mechanical properties

机译:废玻璃对碱活化钨矿开采废料的影响:组成和力学性能

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Increasingly more research is being directed towards the valorisation of waste materials as precursors for synthesising alkali-activated binders (AABs). For this study, varying blends of tungsten mining waste (TMW) and waste glass (WG) are activated using a combined sodium hydroxide (SH) and sodium silicate (SS) alkali solution. The activating solution itself is also varied with respect to the quantities of SS and SH to determine their effect on reactant formation and mechanical strength of TMWbased AABs. The results show that an increased WG content can effectively provide an additional source of reactive silica, contribute to the formation of (C, N)A-S-H gel products and thus significantly improve the mechanical strength. High strength TMW-WG AABs were attributed to a faster TMW dissolution rate and dense microstructure. Such structures were characteristic of formulations with low alkali modulus (SiO2/ Na2O<2) combined with a SS/SH weight ratio of 2.8. For the latter, not only was a characteristic slower strength development with increasing alkali content observed, but there was also a limit of alkali metal concentration (Na2O similar to 3.1%) beyond which the strength deteriorated. Furthermore, SEM micrographs disclose that unreacted particles of WG reinforced the matrix by acting as a filler.
机译:越来越多的研究针对废料的增值,这些废料用作合成碱活化粘合剂(AAB)的前体。在这项研究中,使用混合的氢氧化钠(SH)和硅酸钠(SS)碱溶液活化钨矿开采废料(TMW)和废玻璃(WG)的各种混合物。活化溶液本身也随SS和SH的量而变化,以确定它们对基于TMW的AAB的反应物形成和机械强度的影响。结果表明,增加的WG含量可有效提供反应性二氧化硅的其他来源,有助于形成(C,N)A-S-H凝胶产品,从而显着提高机械强度。高强度的TMW-WG AAB归因于更快的TMW溶解速率和致密的微观结构。这种结构是低碱模量(SiO2 / Na2O <2)和SS / SH重量比为2.8的配方的特征。对于后者,不仅观察到随着碱含量增加而强度发展缓慢的特征,而且还存在碱金属浓度的极限(Na 2 O类似于3.1%),超过该极限强度就会下降。此外,SEM显微照片公开了未反应的WG颗粒通过充当填料来增强基质。

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